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基于肝素和受肝素启发的水凝胶:尺寸效应、凝胶化和生物医学应用。

Heparin-based and heparin-inspired hydrogels: size-effect, gelation and biomedical applications.

机构信息

College of Polymer Science and Engineering, State Key Laboratory of Polymer Materials Engineering, Sichuan University, Chengdu 610065, China.

出版信息

J Mater Chem B. 2019 Feb 28;7(8):1186-1208. doi: 10.1039/c8tb02671h. Epub 2019 Jan 21.

Abstract

Heparin is the highest negatively charged biomolecule, which is a polysaccharide belonging to the glycosaminoglycan family, and its role as a regulator of various proteins, cells and tissues in the human body makes it an indispensable macromolecule. Heparin-based hydrogels are widely investigated in various applications including implantation, tissue engineering, biosensors, and drug-controlled release due to the 3D-constructs of hydrogels. However, heparin has supply and safety problems because it is usually derived from animal sources, and has the clinical limitations of bleeding and thrombocytopenia. Therefore, analogous heparin-mimicking polymers and hydrogels derived from non-animal and/or totally synthetic sources have been widely studied in recent years. In this review, the progress and potential biomedical applications of heparin-based and heparin-inspired hydrogels are highlighted. We classify the forms of these hydrogels by their size including macro-hydrogels, injectable hydrogels, and nano-hydrogels. Then, we summarize the various fabrication strategies for these hydrogels including chemical covalent bonding, physical conjugation, and the combination of chemical and physical interactions. Covalent bonding includes free radical polymerization of vinyl-containing components, amide bond formation reaction, Michael-type addition reaction, click-chemistry, divinyl sulfone crosslinking, and mussel-inspired coating. Hydrogels physically conjugated via host-guest interaction, electrostatic interaction, hydrogen bonding, and hydrophobic interaction are also discussed. Finally, we conclude with the challenges and future directions for the fabrication and the industrialization of heparin-based and heparin-inspired hydrogels. We believe that this review will attract more attention toward the design of heparin-based and heparin-inspired hydrogels, leading to future advancements in this emerging research field.

摘要

肝素是带负电荷最高的生物分子,是一种属于糖胺聚糖家族的多糖,它作为人体各种蛋白质、细胞和组织的调节剂,使其成为不可或缺的大分子。基于肝素的水凝胶由于其 3D 结构,在各种应用中得到了广泛的研究,包括植入物、组织工程、生物传感器和药物控制释放。然而,肝素存在供应和安全问题,因为它通常来自动物来源,并且具有出血和血小板减少的临床限制。因此,近年来,人们广泛研究了源自非动物和/或完全合成来源的类似肝素的聚合物和水凝胶。在这篇综述中,强调了基于肝素和受肝素启发的水凝胶的进展和潜在的生物医学应用。我们按其尺寸将这些水凝胶分类,包括大孔水凝胶、可注射水凝胶和纳米水凝胶。然后,我们总结了这些水凝胶的各种制备策略,包括化学共价键合、物理共轭和化学与物理相互作用的结合。共价键合包括含有乙烯基的成分的自由基聚合、酰胺键形成反应、迈克尔加成反应、点击化学、二乙烯基砜交联和贻贝启发的涂层。还讨论了通过主客体相互作用、静电相互作用、氢键和疏水相互作用物理共轭的水凝胶。最后,我们总结了基于肝素和受肝素启发的水凝胶的制造和产业化的挑战和未来方向。我们相信,这篇综述将引起更多人对基于肝素和受肝素启发的水凝胶设计的关注,为这个新兴研究领域的未来发展带来进展。

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